来自hipsc心肌细胞的卵泡抑素促进猪梗死后左室重构的心肌细胞增殖。

IF 16.5 1区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS Circulation research Pub Date : 2025-01-17 Epub Date: 2024-12-18 DOI:10.1161/CIRCRESAHA.124.325562
Yuhua Wei, Gregory Walcott, Thanh Nguyen, Xiaoxiao Geng, Bijay Guragain, Hanyu Zhang, Akazha Green, Manuel Rosa-Garrido, Jack M Rogers, Daniel J Garry, Lei Ye, Jianyi Zhang
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Here, we knocked out human leukocyte antigen class I and class II expression in <sup>CCND2-OE</sup>hiPSC-CMs (<sup>KO/OE</sup>hiPSC-CMs) to reduce the cells' immunogenicity and then assessed the therapeutic efficacy of <sup>KO/OE</sup>hiPSC-CMs for the treatment of myocardial infarction.</p><p><strong>Methods: </strong><sup>KO/OE</sup>hiPSC-CM and wild-type hiPSC-CM (<sup>WT</sup>hiPSC-CM) spheroids were differentiated in shaking flasks, purified, characterized, and intramyocardially injected into pigs after ischemia/reperfusion injury; control animals were injected with basal medium. 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引用次数: 0

摘要

背景:将含有CCND2-OE(过表达的细胞周期素- d2)的人诱导多能干细胞(hiPSCs)分化为心肌细胞(CCND2-OEhiPSC-CMs)并给予免疫缺陷小鼠梗死后的心脏,这些细胞在给药后增殖,并在50%的疤痕中重新填充。本研究通过敲除CCND2-OEhiPSC-CMs (KO/OEhiPSC-CMs)中人类白细胞抗原I类和II类的表达,降低细胞的免疫原性,评估KO/OEhiPSC-CMs治疗心肌梗死的疗效。方法:将KO/OEhiPSC-CM和野生型hiPSC-CM (WThiPSC-CM)在摇瓶中分化、纯化、鉴定,并在缺血/再灌注损伤后给猪心肌内注射;对照动物注射基础培养基。通过心脏磁共振成像评估心功能,通过免疫染色和单核RNA测序评估心肌细胞增殖。结果:用KO/OEhiPSC-CM球体治疗的猪的心功能和疤痕大小的测量结果明显优于用中等或WThiPSC-CM球体治疗的动物。给药后仅1周检测到KO/OEhiPSC-CMs,但KO/OEhiPSC-CM球形组心脏内源性猪心肌细胞的细胞周期活性和增殖评估明显高于其他2组。单核rna测序分析发现,在第1周,KO/OEhiPSC-CM球体处理的心脏(3.65%)中增殖的心肌细胞群明显高于培养基(0.89%)或WThiPSC-CM球体处理组(1.33%)。KO/OEhiPSC-CM球体处理后,猪心肌细胞中YAP (Yes-associated protein, Yes-associated protein)蛋白水平和核定位也显著上调。与HIPPO/YAP通路相互作用的Follistatin在KO/OEhiPSC-CM球体培养基中的含量显著高于WThiPSC-CM球体(30.29±2.39 ng/mL比16.62±0.83 ng/mL, P=0.0056)。在16天的培养过程中,卵泡抑素使WThiPSC-CM细胞计数增加了28.3%,并促进了成年小鼠梗死心脏中的心肌细胞增殖。结论:KO/OEhiPSC-CM球体通过分泌卵泡抑素,上调内源性猪心肌细胞HIPPO/YAP信号和增殖,显著改善猪心脏缺血再灌注损伤后的心功能,减小梗死面积。
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Follistatin From hiPSC-Cardiomyocytes Promotes Myocyte Proliferation in Pigs With Postinfarction LV Remodeling.

Background: When human induced pluripotent stem cells (hiPSCs) that CCND2-OE (overexpressed cyclin-D2) were differentiated into cardiomyocytes (CCND2-OEhiPSC-CMs) and administered to the infarcted hearts of immunodeficient mice, the cells proliferated after administration and repopulated >50% of the scar. Here, we knocked out human leukocyte antigen class I and class II expression in CCND2-OEhiPSC-CMs (KO/OEhiPSC-CMs) to reduce the cells' immunogenicity and then assessed the therapeutic efficacy of KO/OEhiPSC-CMs for the treatment of myocardial infarction.

Methods: KO/OEhiPSC-CM and wild-type hiPSC-CM (WThiPSC-CM) spheroids were differentiated in shaking flasks, purified, characterized, and intramyocardially injected into pigs after ischemia/reperfusion injury; control animals were injected with basal medium. Cardiac function was evaluated via cardiac magnetic resonance imaging, and cardiomyocyte proliferation was assessed via immunostaining and single-nucleus RNA sequencing.

Results: Measurements of cardiac function and scar size were significantly better in pigs treated with KO/OEhiPSC-CM spheroids than in animals treated with medium or WThiPSC-CM spheroids. KO/OEhiPSC-CMs were detected for just 1 week after administration, but assessments of cell cycle activity and proliferation were significantly higher in the endogenous pig cardiomyocytes of the hearts from the KO/OEhiPSC-CM spheroid group than in those from the other 2 groups. Single-nucleus RNA-sequencing analysis identified a cluster of proliferating cardiomyocytes that was significantly more prevalent in the KO/OEhiPSC-CM spheroid-treated hearts (3.65%) than in the hearts from the medium (0.89%) or WThiPSC-CM spheroid (1.33%) groups at week 1. YAP (Yes-associated protein) protein levels and nuclear localization were also significantly upregulated in pig cardiomyocytes after treatment with KO/OEhiPSC-CM spheroids. Follistatin, which interacts with the HIPPO/YAP pathway, was significantly more abundant in the medium from KO/OEhiPSC-CM spheroids than WThiPSC-CM spheroids (30.29±2.39 versus 16.62±0.83 ng/mL, P=0.0056). Treatment with follistatin increased WThiPSC-CM cell counts by 28.3% over 16 days in culture and promoted cardiomyocyte proliferation in the infarcted hearts of adult mice.

Conclusions: KO/OEhiPSC-CM spheroids significantly improved cardiac function and reduced infarct size in pig hearts after ischemia/reperfusion injury by secreting follistatin, which upregulated HIPPO/YAP signaling and proliferation in endogenous pig cardiomyocytes.

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来源期刊
Circulation research
Circulation research 医学-外周血管病
CiteScore
29.60
自引率
2.00%
发文量
535
审稿时长
3-6 weeks
期刊介绍: Circulation Research is a peer-reviewed journal that serves as a forum for the highest quality research in basic cardiovascular biology. The journal publishes studies that utilize state-of-the-art approaches to investigate mechanisms of human disease, as well as translational and clinical research that provide fundamental insights into the basis of disease and the mechanism of therapies. Circulation Research has a broad audience that includes clinical and academic cardiologists, basic cardiovascular scientists, physiologists, cellular and molecular biologists, and cardiovascular pharmacologists. The journal aims to advance the understanding of cardiovascular biology and disease by disseminating cutting-edge research to these diverse communities. In terms of indexing, Circulation Research is included in several prominent scientific databases, including BIOSIS, CAB Abstracts, Chemical Abstracts, Current Contents, EMBASE, and MEDLINE. This ensures that the journal's articles are easily discoverable and accessible to researchers in the field. Overall, Circulation Research is a reputable publication that attracts high-quality research and provides a platform for the dissemination of important findings in basic cardiovascular biology and its translational and clinical applications.
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